会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • BATTERY SYSTEM
    • 电池系统
    • US20090011326A1
    • 2009-01-08
    • US12167185
    • 2008-07-02
    • Steven J. WoodWilliam H. Tiedemann
    • Steven J. WoodWilliam H. Tiedemann
    • H01M2/10
    • H01M4/64H01M2/0257H01M4/02H01M10/0525H01M10/058H01M10/0587H01M2004/021H01M2010/4292
    • A battery assembly includes a plurality of battery modules, each of the battery modules comprising a plurality of electrochemical cells having a first end comprising a terminal and a second end opposite the first end, the second end comprising an adapter having at least one aperture and arranged such that at least a portion of the adapter is provided in contact with at least a portion of a terminal of an adjacent electrochemical cell. The battery assembly also includes a device that includes at least one member aligned with apertures in a plurality of the adapters to provide a path for effluent escaping the apertures. The device is configured to route effluent from the plurality of battery modules away from the battery assembly.
    • 电池组件包括多个电池模块,每个电池模块包括多个电化学电池,其具有第一端,第一端包括端子和与第一端相对的第二端,第二端包括具有至少一个孔的适配器, 使得适配器的至少一部分设置成与相邻电化学电池的端子的至少一部分接触。 电池组件还包括一种装置,其包括与多个适配器中的孔对准的至少一个构件,以提供流出物逸出孔的路径。 该装置被配置为将来自多个电池模块的流出物从电池组件排出。
    • 6. 发明授权
    • Plastic container with ring stabilized base
    • 塑料容器带环稳定基座
    • US4919284A
    • 1990-04-24
    • US335998
    • 1989-04-10
    • William H. TiedemannDennis L. Marshall
    • William H. TiedemannDennis L. Marshall
    • B65D23/00
    • B65D23/001
    • A plastic container is provided which includes a stabilizing ring attached to the base structure of a blow molded bottle for improving the vertical stability to the container when supported upon a horizontal surface. The container includes a plastic bottle having a tubular sidewall and a base structure closing the bottle at an end of the sidewall. The base structure includes an outer wall having a radially inner lower edge portion, an inner wall within the outer wall which has an axial recessed portion extending upward into the container. The lower edge portions of the inner and outer walls are merged together. The stabilizing ring is attached to the base structure and extends radially outwardly and downwardly forming an annular supporting surface at the lower edge of the ring upon which the container is supported.
    • 提供一种塑料容器,其包括连接到吹塑瓶的基部结构的稳定环,用于当支撑在水平表面上时改善对容器的垂直稳定性。 容器包括具有管状侧壁的塑料瓶和在侧壁的一端封闭瓶子的基座结构。 基座结构包括具有径向内部下边缘部分的外壁,外壁内侧壁上具有向上延伸到容器中的轴向凹部。 内壁和外壁的下边缘部分合并在一起。 稳定环附接到基部结构并且在其上支撑容器的环的下边缘处径向向外和向下延伸形成环形支撑表面。
    • 9. 发明授权
    • Grooved separator electrode composite
    • 沟槽分离器电极复合材料
    • US5443600A
    • 1995-08-22
    • US129890
    • 1993-09-30
    • William H. Tiedemann
    • William H. Tiedemann
    • H01M10/04H01M10/12
    • H01M10/0413H01M10/0463H01M10/12Y10T29/49108Y10T29/49115
    • A battery cell includes at a plurality of composite separator/electrode structures, each composite structure including a support member having a plurality of parallel, closely spaced ribs defining a plurality of grooves which extend longitudinally of the support member, alternating ones of the grooves having a positive paste of an active material therein, and the remaining grooves having a negative paste of an active material therein, and a current collector lead wire in each groove embedded in the paste and centrally located in the groove with the terminal ends of the lead wires of the positive electrodes extending out of one end of the composite structure and being interconnected to form a positive termination, and the terminal ends of the lead wires of the negative electrodes extending out of the opposite end of the composite structure and being interconnected to form a negative termination, a plurality of the battery cells being stacked together to form a battery having a desired amp hour capacity. Also disclosed is a method of making the composite separator/electrode structure wherein a first layer of positive and negative paste material is applied to alternate grooves to fill the grooves to half their volume, the lead wires are placed on the paste in each of the grooves, and then a second layer of positive and negative paste material is applied to the grooves to fill the grooves and encapsulate the lead wires in the paste material.
    • 电池单元包括多个复合隔板/电极结构,每个复合结构包括支撑构件,该支撑构件具有多个平行紧密隔开的肋,所述多个平行紧密间隔的肋限定了沿支撑构件纵向延伸的多个凹槽,交替的凹槽具有 其中活性物质的正极浆料和其中具有活性材料的负性浆料的剩余的沟槽以及在每个凹槽中的集电体引线嵌入在该糊料中并位于该凹槽中,并且引线的末端 正电极从复合结构的一端延伸并互连以形成正极端子,并且负电极的引线的末端延伸出复合结构的相对端并且互连以形成负极 多个电池单元被堆叠在一起以形成具有期望的a的电池 mp小时容量。 还公开了一种制备复合隔膜/电极结构的方法,其中将正和负糊料的第一层施加到交替的沟槽以将槽填充到其体积的一半,将引线放置在每个槽中的糊料上 ,然后将第二层正和负的糊料材料施加到凹槽上以填充凹槽并将引线封装在糊料中。
    • 10. 发明授权
    • Thermal management of battery systems
    • 电池系统的热管理
    • US5385793A
    • 1995-01-31
    • US916965
    • 1992-07-20
    • William H. TiedemannJohn Newman
    • William H. TiedemannJohn Newman
    • H01M6/48H01M10/50H01M10/48
    • H01M10/613H01M10/625H01M10/6554H01M10/6556H01M10/6563H01M10/6567H01M6/48
    • An architecture, arrangement, or construction for battery systems such as monopolar and bipolar batteries is disclosed. The battery system includes a stack of bipolar or monopolar modules having current collectors extending from opposite sides of the battery system. The current collectors are located in cooling channels. The cooling channel is surrounded by an insulating material. The cooling channel contains a fluid which may be air, water, forced air, Freon.RTM. or any other media useful in heating and cooling applications. The battery may be vented or a heat exchanger may be provided in communication with the cooling channels. The thermal management system is particularly useful in applications such as electric vehicles. Heat may be provided through the cooling channels in order to raise the temperature inside the battery system.
    • 公开了诸如单极和双极电池的电池系统的架构,布置或结构。 电池系统包括具有从电池系统的相对侧延伸的集电器的双极或单极模块的堆叠。 目前的收集器位于冷却通道中。 冷却通道被绝缘材料包围。 冷却通道包含可以是空气,水,强制空气,氟利昂TM或用于加热和冷却应用的任何其它介质的流体。 电池可以被排放,或者可以提供与冷却通道连通的热交换器。 热管理系统在诸如电动车辆的应用中特别有用。 可以通过冷却通道提供热量,以便提高电池系统内部的温度。